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Project detail
Duration: 1.3.2020 — 28.2.2021
Funding resources
Vysoké učení technické v Brně - Vnitřní projekty VUT
On the project
The main objective of this project is to propose and develop a new, advanced, more effective, objective, and user-friendly quantitative automatic SEM image analysis method of porous structure of freeze-dried scaffolds utilizing the state-of-the-art deep learning approaches, especially the convolutional neural networks. The proposed method will eliminate the person's error rate, significantly reduce the image processing time, improve the accuracy of segmentation and provide more information about the pore distribution.
Mark
CEITEC VUT/FEKT-J-20-6146
Default language
Czech
People responsible
Muchová Johana, Ing., Ph.D. - principal person responsibleMekyska Jiří, doc. Ing., Ph.D. - fellow researcherMucha Ján, Ing., Ph.D. - fellow researcherVojtová Lucy, doc. Ing., Ph.D. - fellow researcher
Units
Advanced Biomaterials- responsible department (11.3.2020 - not assigned)Department of Telecommunications- internal (1.1.2020 - 31.12.2020)Faculty of Electrical Engineering and Communication- internal (1.1.2020 - 31.12.2020)Advanced Biomaterials- co-beneficiary (1.1.2020 - 31.12.2020)Central European Institute of Technology BUT- beneficiary (1.1.2020 - 31.12.2020)
Results
MUCHA, J.; MUCHOVÁ, J.: SEMIPE. URL: https://github.com/BDALab/SEMIPE.git. (Software)Detail
MUCHOVÁ, J.; HEARNDEN, V.; PAVLIŇÁKOVÁ, V.; VIŠTEJNOVÁ, L.; ZAVAĎÁKOVÁ, A.; ŠMERKOVÁ, K.; KOČIOVÁ, S.; ADAM, V.; KOPEL, P.; MUCHA, J.; VOJTOVÁ, L. Hodnocení biokompatibility obohacených pěnových hydrogelů včetně hodnocení distribuce pórů pomocí nové metody SEMIPE. XIII. mezinárodní konference„Bioimplantologie 2022“. 1. Praha: České vysoké učení technické v Praze, 2022. s. 15-15. ISBN: 978-80-01-06983-7.Detail
MUCHOVÁ, J.; HEARNDEN, V.; MICHLOVSKÁ, L.; VIŠTEJNOVÁ, L.; ZAVAĎÁKOVÁ, A.; ŠMERKOVÁ, K.; KOČIOVÁ, S.; ADAM, V.; KOPEL, P.; VOJTOVÁ, L. Mutual influence of selenium nanoparticles and FGF2-STAB® on biocompatible properties of collagen/chitosan 3D scaffolds: in vitro and ex ovo evaluation. JOURNAL OF NANOBIOTECHNOLOGY, 2021, vol. 19, no. 1, p. 1-16. ISSN: 1477-3155.Detail
VOJTOVÁ, L.; PAVLIŇÁKOVÁ, V.; MUCHOVÁ, J.; KACVINSKÁ, K.; BRTNÍKOVÁ, J.; KNOZ, M.; LIPOVÝ, B.; FALDYNA, M.; GÖPFERT, E.; HOLOUBEK, J.; PAVLOVSKÝ, Z.; VÍCENOVÁ, M.; BLAHNOVÁ, V.; HEARNDEN, V.; FILOVA, E. Healing and Angiogenic Properties of Collagen/Chitosan Scaffolds Enriched with Hyperstable FGF2-STAB(R) Protein: In Vitro, Ex Ovo and In Vivo Comprehensive Evaluation. Biomedicines, 2021, vol. 9, no. 6, p. 1-27. ISSN: 2227-9059.Detail
Responsibility: Muchová Johana, Ing., Ph.D.